Department of Chemistry and Key Laboratory of Biomedical Polymers, Ministry of Education, Wuhan University,Wuhan 430072, China.
Bioconjug Chem. 2010 Jul 21;21(7):1271-9. doi: 10.1021/bc100068f.
Quaternized celluloses (QCs) with different molecular weight (M(w)) and degree of cationic substitution (DS) were homogeneously synthesized in NaOH/urea aqueous solutions and were studied as gene carriers. QCs were evaluated for efficacy of nanoparticle formation, DNA binding efficiency, morphology, and in vitro gene transfection efficiency. The factors affecting the transfection efficiency, e.g., M(w), DS, and N/P ratios, have been evaluated. The cytotoxicity of QCs and QC/DNA complexes were evaluated in 293T cells and were found to be relatively low compared with 25 kDa PEI and PEI/DNA complex, which increased slightly with increasing of M(w) and DS. All QCs obtained could bind DNA efficiently, and QC/DNA complexes exhibited effective transfection in comparison to the naked DNA. More importantly, the QC/DNA complexes, were stable and the transfection efficiency was not inhibited in the presence of serum. The results revealed an important combined effect between M(w) and DS of QCs in determining transgene expression, and QCs with M(w) of about 8 x 10(4) g/mol and DS of about 0.6 displayed relatively higher transfection efficiencies attributed to the intermediate stability.
季铵化纤维素(QCs)具有不同的分子量(M(w))和阳离子取代度(DS),在 NaOH/尿素水溶液中均匀合成,并作为基因载体进行研究。评估了 QC 形成纳米颗粒的功效、DNA 结合效率、形态和体外基因转染效率。评估了影响转染效率的因素,例如 M(w)、DS 和 N/P 比。在 293T 细胞中评估了 QC 和 QC/DNA 复合物的细胞毒性,与 25 kDa 的 PEI 和 PEI/DNA 复合物相比,发现它们的细胞毒性相对较低,随着 M(w)和 DS 的增加略有增加。所有获得的 QC 都能有效地结合 DNA,与裸 DNA 相比,QC/DNA 复合物显示出有效的转染效果。更重要的是,QC/DNA 复合物稳定,在存在血清的情况下,转染效率不受抑制。结果表明,M(w)和 QC 的 DS 之间存在重要的协同作用,决定了转基因的表达,分子量约为 8 x 10(4)g/mol 和 DS 约为 0.6 的 QC 显示出相对较高的转染效率,这归因于中间稳定性。